Chiruvolu S, Warriner H E, Naranjo E, Idziak S H, Rädler J O, Plano R J, Zasadzinski J A, Safinya C R
Materials Research Laboratory, University of California, Santa Barbara 93106.
Science. 1994 Nov 18;266(5188):1222-5. doi: 10.1126/science.7973704.
An equilibrium phase belonging to the family of bilayer liposomes in ternary mixtures of dimyristoylphosphatidylcholine (DMPC), water, and geraniol (a biological alcohol derived from oil-soluble vitamins that acts as a cosurfactant) has been identified. Electron and optical microscopy reveal the phase, labeled Ltv, to be composed of highly entangled tubular vesicles. In situ x-ray diffraction confirms that the tubule walls are multilamellar with the lipids in the chain-melted state. Macroscopic observations show that the Ltv phase coexists with the well-known L4 phase of spherical vesicles and a bulk L alpha phase. However, the defining characteristic of the Ltv phase is the Weissenberg rod climbing effect under shear, which results from its polymer-like entangled microstructure.
已确定在二肉豆蔻酰磷脂酰胆碱(DMPC)、水和香叶醇(一种源自油溶性维生素的生物醇,用作助表面活性剂)的三元混合物中属于双层脂质体家族的一种平衡相。电子显微镜和光学显微镜显示,标记为Ltv的该相由高度缠结的管状囊泡组成。原位X射线衍射证实,小管壁是多片层的,脂质处于链熔化状态。宏观观察表明,Ltv相与球形囊泡的著名L4相和本体Lα相共存。然而,Ltv相的决定性特征是在剪切作用下的韦森堡杆爬升效应,这是由其类似聚合物的缠结微观结构导致的。